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硫代膦酰基和氨基取代的金属化叶立德的合成、晶体和电子结构。

Synthesis, Crystal and Electronic Structures of a Thiophosphinoyl- and Amino-Substituted Metallated Ylide.

机构信息

Faculty of Chemistry and Biochemistry, Ruhr-University Bochum, Universitätsstraße 150, 44801, Bochum, Germany.

出版信息

ChemistryOpen. 2021 Nov;10(11):1089-1094. doi: 10.1002/open.202100187. Epub 2021 Sep 27.

Abstract

α-Metallated ylides have revealed themselves to be versatile reagents for the introduction of ylide groups. Herein, we report the synthesis of the thiophosphinoyl and piperidyl (Pip) substituted α-metallated ylide [Ph (Pip)P=C-P(S)Ph ]M (M=Li, Na, K) through a four-step synthetic procedure starting from diphenylmethylphosphine sulfide. Metallation of the ylide intermediate was successfully accomplished with different alkali metal bases delivering the lithium, sodium and potassium salts, the latter isolable in high yields. Structure analyses of the lithium and potassium compounds in the solid state with and without crown ether revealed different aggregates (monomer, dimer and hexamer) with the metals coordinated by the thiophosphoryl moiety and ylidic carbon atom. Although the piperidyl group does not coordinate to the metal, it significantly contributes to the stability of the yldiide by charge delocalization through negative hyperconjugation.

摘要

α-金属化叶立德已被证明是引入叶立德基团的多功能试剂。在此,我们通过从二苯甲基膦硫醚出发的四步合成程序,报告了硫代膦酰基和哌啶基(Pip)取代的α-金属化叶立德[Ph(Pip)P=C-P(S)Ph]M(M=Li、Na、K)的合成。通过不同的碱金属碱,成功地对叶立德中间体进行了金属化,得到了锂盐、钠盐和钾盐,后者可以高产率分离。对固态下有和没有冠醚的锂和钾化合物的结构分析表明,金属通过与硫代膦基和叶立德碳原子配位,形成不同的聚合体(单体、二聚体和六聚体)。尽管哌啶基不与金属配位,但它通过负超共轭作用通过电荷离域对叶立德的稳定性有显著贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4971/8562316/a89dd706f99a/OPEN-10-1089-g006.jpg

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